2 * Copyright 2012 Red Hat Inc.
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
11 * The above copyright notice and this permission notice shall be included in
12 * all copies or substantial portions of the Software.
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
20 * OTHER DEALINGS IN THE SOFTWARE.
24 #define nv04_instmem(p) container_of((p), struct nv04_instmem, base)
27 #include <core/memory.h>
28 #include <core/ramht.h>
31 struct nvkm_instmem base
;
35 /******************************************************************************
36 * instmem object implementation
37 *****************************************************************************/
38 #define nv04_instobj(p) container_of((p), struct nv04_instobj, memory)
41 struct nvkm_memory memory
;
42 struct nv04_instmem
*imem
;
43 struct nvkm_mm_node
*node
;
46 static enum nvkm_memory_target
47 nv04_instobj_target(struct nvkm_memory
*memory
)
49 return NVKM_MEM_TARGET_INST
;
53 nv04_instobj_addr(struct nvkm_memory
*memory
)
55 return nv04_instobj(memory
)->node
->offset
;
59 nv04_instobj_size(struct nvkm_memory
*memory
)
61 return nv04_instobj(memory
)->node
->length
;
65 nv04_instobj_acquire(struct nvkm_memory
*memory
)
67 struct nv04_instobj
*iobj
= nv04_instobj(memory
);
68 struct nvkm_device
*device
= iobj
->imem
->base
.subdev
.device
;
69 return device
->pri
+ 0x700000 + iobj
->node
->offset
;
73 nv04_instobj_release(struct nvkm_memory
*memory
)
78 nv04_instobj_rd32(struct nvkm_memory
*memory
, u64 offset
)
80 struct nv04_instobj
*iobj
= nv04_instobj(memory
);
81 struct nvkm_device
*device
= iobj
->imem
->base
.subdev
.device
;
82 return nvkm_rd32(device
, 0x700000 + iobj
->node
->offset
+ offset
);
86 nv04_instobj_wr32(struct nvkm_memory
*memory
, u64 offset
, u32 data
)
88 struct nv04_instobj
*iobj
= nv04_instobj(memory
);
89 struct nvkm_device
*device
= iobj
->imem
->base
.subdev
.device
;
90 nvkm_wr32(device
, 0x700000 + iobj
->node
->offset
+ offset
, data
);
94 nv04_instobj_dtor(struct nvkm_memory
*memory
)
96 struct nv04_instobj
*iobj
= nv04_instobj(memory
);
97 mutex_lock(&iobj
->imem
->base
.subdev
.mutex
);
98 nvkm_mm_free(&iobj
->imem
->heap
, &iobj
->node
);
99 mutex_unlock(&iobj
->imem
->base
.subdev
.mutex
);
103 static const struct nvkm_memory_func
104 nv04_instobj_func
= {
105 .dtor
= nv04_instobj_dtor
,
106 .target
= nv04_instobj_target
,
107 .size
= nv04_instobj_size
,
108 .addr
= nv04_instobj_addr
,
109 .acquire
= nv04_instobj_acquire
,
110 .release
= nv04_instobj_release
,
111 .rd32
= nv04_instobj_rd32
,
112 .wr32
= nv04_instobj_wr32
,
116 nv04_instobj_new(struct nvkm_instmem
*base
, u32 size
, u32 align
, bool zero
,
117 struct nvkm_memory
**pmemory
)
119 struct nv04_instmem
*imem
= nv04_instmem(base
);
120 struct nv04_instobj
*iobj
;
123 if (!(iobj
= kzalloc(sizeof(*iobj
), GFP_KERNEL
)))
125 *pmemory
= &iobj
->memory
;
127 nvkm_memory_ctor(&nv04_instobj_func
, &iobj
->memory
);
130 mutex_lock(&imem
->base
.subdev
.mutex
);
131 ret
= nvkm_mm_head(&imem
->heap
, 0, 1, size
, size
,
132 align
? align
: 1, &iobj
->node
);
133 mutex_unlock(&imem
->base
.subdev
.mutex
);
137 /******************************************************************************
138 * instmem subdev implementation
139 *****************************************************************************/
142 nv04_instmem_rd32(struct nvkm_instmem
*imem
, u32 addr
)
144 return nvkm_rd32(imem
->subdev
.device
, 0x700000 + addr
);
148 nv04_instmem_wr32(struct nvkm_instmem
*imem
, u32 addr
, u32 data
)
150 nvkm_wr32(imem
->subdev
.device
, 0x700000 + addr
, data
);
154 nv04_instmem_oneinit(struct nvkm_instmem
*base
)
156 struct nv04_instmem
*imem
= nv04_instmem(base
);
157 struct nvkm_device
*device
= imem
->base
.subdev
.device
;
160 /* PRAMIN aperture maps over the end of VRAM, reserve it */
161 imem
->base
.reserved
= 512 * 1024;
163 ret
= nvkm_mm_init(&imem
->heap
, 0, imem
->base
.reserved
, 1);
167 /* 0x00000-0x10000: reserve for probable vbios image */
168 ret
= nvkm_memory_new(device
, NVKM_MEM_TARGET_INST
, 0x10000, 0, false,
173 /* 0x10000-0x18000: reserve for RAMHT */
174 ret
= nvkm_ramht_new(device
, 0x08000, 0, NULL
, &imem
->base
.ramht
);
178 /* 0x18000-0x18800: reserve for RAMFC (enough for 32 nv30 channels) */
179 ret
= nvkm_memory_new(device
, NVKM_MEM_TARGET_INST
, 0x00800, 0, true,
184 /* 0x18800-0x18a00: reserve for RAMRO */
185 ret
= nvkm_memory_new(device
, NVKM_MEM_TARGET_INST
, 0x00200, 0, false,
194 nv04_instmem_dtor(struct nvkm_instmem
*base
)
196 struct nv04_instmem
*imem
= nv04_instmem(base
);
197 nvkm_memory_del(&imem
->base
.ramfc
);
198 nvkm_memory_del(&imem
->base
.ramro
);
199 nvkm_ramht_del(&imem
->base
.ramht
);
200 nvkm_memory_del(&imem
->base
.vbios
);
201 nvkm_mm_fini(&imem
->heap
);
205 static const struct nvkm_instmem_func
207 .dtor
= nv04_instmem_dtor
,
208 .oneinit
= nv04_instmem_oneinit
,
209 .rd32
= nv04_instmem_rd32
,
210 .wr32
= nv04_instmem_wr32
,
211 .memory_new
= nv04_instobj_new
,
217 nv04_instmem_new(struct nvkm_device
*device
, int index
,
218 struct nvkm_instmem
**pimem
)
220 struct nv04_instmem
*imem
;
222 if (!(imem
= kzalloc(sizeof(*imem
), GFP_KERNEL
)))
224 nvkm_instmem_ctor(&nv04_instmem
, device
, index
, &imem
->base
);
225 *pimem
= &imem
->base
;